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Stirrer speed adaption is beneficial for liquefaction of cellulose

机译:搅拌器速度适应有利于纤维素的液化

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Enzymatic hydrolysis of cellulose is a key step in the valorisation of lignocellulosic material subsequent to pretreatment. The optimization of hydrolytic enzymes is in the focus of intensive research of different institutes and companies whereby not much attention is being paid to the process engineering parameters such as the stirrer velocity. We therefore focused on a stirrer speed adaption strategy during enzymatic cellulose hydrolysis in larger lab-scale. Mixing time measurements were performed with carboxymethyl cellulose solutions in a 10 L-tank reactor equipped with a segmented helical stirrer to determine agitator speed levels adapted to the cellulose suspensions' viscosities at the certain hydrolysis time. Comparing the optimized hydrolysis with adaptation of stirrer speed to the hydrolysis performed at a constant stirrer velocity, a 30% higher glucose yield and 25% lower energy input was observed. Overall, the enzymatic hydrolysis of cellulose applying a step-wise adaption of the stirrer velocity thus resulted in a faster liquefaction, while at the same time the overall power requirement was reduced.
机译:纤维素的酶水解是在预处理之后木质纤维素材料的储度的关键步骤。水解酶的优化是对不同机构和公司的密集研究的重点,即不受搅拌速度的过程工程参数的关注。因此,我们在较大实验室规模的酶促纤维素水解过程中侧重于搅拌器速度适应策略。在配备有分段螺旋搅拌器的10L型罐式反应器中,用羧甲基纤维素溶液进行混合时间测量,以确定适于在某些水解时间的纤维素悬浮液的搅拌器速度水平。将优化的水解与在恒定搅拌器速度下进行的搅拌器速度调整到水解,观察到30%较高的葡萄糖产率和25%的能量输入。总之,纤维素的酶水解施用逐步适应搅拌器速度,因此导致更快的液化,同时降低了总功率要求。

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